Comparison of bending mechanism and spring-back feature between 90-degree L-bending and 90-degree V-bending

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Author listPhanitwong W., Thipprakmas S.

PublisherAmerican Scientific Publishers

Publication year2012

JournalAdvanced Science Letters (1936-6612)

Volume number14

Issue number1

Start page95

End page100

Number of pages6

ISSN1936-6612

eISSN1936-7317

URLhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84864473583&doi=10.1166%2fasl.2012.4070&partnerID=40&md5=3bef943423023398a88d94651a11132b

LanguagesEnglish-Great Britain (EN-GB)


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Abstract

To fabricate the 90-degree bent parts, the 90-degree L-bending and 90-degree V-bending processes are widely used. Owing to an increase in precision requirements on these bent parts in recent years, therefore, the suitable selection to use the 90-degree L-bending and 90-degree V-bending processes are strongly considered. In this study, using the finite element method (FEM) and laboratory experiments, the 90-degree L-bending and 90-degree V-bending mechanism and their spring-back/spring-go feature were clearly identified based on the stress distribution analysis. The results revealed that the reversed bending characteristic rarely generated in the leg of the work piece in case of the 90-degree L-bending. In contrast, the reversed bending characteristic generated in the leg of the work piece in case of the 90-degree V-bending. This resulted in the spring-back feature in case of the 90-degree L-bending was larger comparing with that in case of the 90-degree V-bending. The application of small die radius caused the higher risk of producing scratches or otherwise damaging the work piece in case of the 90-degree L-bending. In contrast, in case of the 90-degree V-bending, the application of large punch radius caused the higher risk of producing spring-go feature. The FEM simulation results showed a good agreement with the experimental results with reference to the bending forces and bending angles. ฉ 2012 American Scientific Publishers. All rights reserved.


Keywords

L-bendingSpring-backSpring-goV-bending


Last updated on 2023-02-10 at 07:35